Storage structure and packaging box

By setting limit components and elastic parts in the storage structure, a connecting storage position for multi-special chargers is formed, and the problem of high production and inventory costs of multi-special power adapter boxes is solved, and efficient and convenient charger storage is achieved.

CN223238247UActive Publication Date: 2025-08-19LENOVO (BEIJING) LTD
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Patent Information

Application Number
CN202422115548.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-08-19
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

In order to adapt to the power supply standards in different countries, existing electronic products manufacturers need to design power adapter boxes of multiple specifications, resulting in high production and inventory costs and poor versatility.

Method used

It provides a storage structure and a packaging box. By setting a limiting assembly in the box body to form at least two interconnected storage positions, it adapts to chargers of different specifications, and combines the limiting parts and elastic parts to limit the movement of the charger to achieve stable storage of multiple specifications.

Benefits of technology

It improves the versatility of the storage structure and user operation convenience, reduces production and inventory costs, and ensures the integrity of the charger during transportation and storage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a storage structure and a packaging box, the storage structure comprises a first box body defined by at least one plate body, and the first box body is provided with a containing space; the limiting assembly is arranged in the containing space, at least two containing positions which are communicated with each other are formed in the containing space, and the containing positions can contain chargers of different specifications.
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Description

Technical Field

[0001] The present application relates to the field of packaging technology, and in particular to a storage structure and a packaging box. Background Art

[0002] In a globalized market, electronic product sales networks span the globe. However, power supply standards vary from country to country. Electronic products of the same brand or model must be equipped with power adapters that comply with local standards when entering different markets.

[0003] Currently, electronic product manufacturers and sellers have designed power adapter boxes of various specifications. Each power adapter box is equipped with a limit slot that matches the shape of a specific power adapter to limit the movement of the power adapter and thus ensure its integrity during transportation and storage.

[0004] However, the power adapter box designed for a specific power adapter has poor versatility, which greatly increases the cost of production and inventory. Utility Model Content

[0005] The purpose of the embodiments of the present application is to provide a storage structure and a packaging box.

[0006] To solve the above technical problems, the embodiments of the present application provide the following technical solutions:

[0007] A first aspect of the present application provides a storage structure, comprising:

[0008] A first box body formed by enclosing at least one plate body, wherein the first box body has a receiving space;

[0009] The limiting component is arranged in the accommodating space, and at least two mutually communicating storage positions are formed in the accommodating space, and the storage positions can accommodate chargers of different specifications.

[0010] In some modified implementations of the first aspect of the present application,

[0011] The limiting assembly divides the accommodating space into a first storage position and a second storage position, and at least a portion of the spatial structure of the first storage position is different from that of the second storage position.

[0012] In some embodiments, the limiting assembly includes:

[0013] a limiting member disposed in the first housing, the limiting member being capable of limiting movement of the charger in the storage position in a first direction;

[0014] An elastic member is disposed in the first box body; the elastic member can abut against the charger in the storage position along a second direction to limit the movement of the charger in the second direction, the limiting member and the elastic member cooperate to form the storage position, and the first direction is perpendicular to the second direction.

[0015] In some embodiments, the limiting member includes a first limiting portion disposed opposite to the first plate of the first box body, the first limiting portion being capable of forming a first storage position together with the first plate and the first elastic member. When the first charger of the first specification is in the first storage position, several surfaces of the first charger respectively abut against the first plate, the first limiting portion, and the first elastic member to limit movement of the first charger in the first direction and the second direction.

[0016] and / or,

[0017] The limiting member also includes a second limiting portion arranged opposite to the second plate body of the first box body, and the second limiting portion can form a second storage position with the second plate body and the second elastic member. When the second charger with a second specification is in the second storage position, several surfaces of the second charger respectively abut against the second plate body, the second limiting portion and the second elastic member to limit the movement of the second charger in the first direction and the second direction.

[0018] In some embodiments, the second elastic member includes a first elastic portion and a second elastic portion arranged opposite to each other, and the first elastic portion and the second elastic portion are respectively provided with a first notch and a second notch arranged opposite to each other, and the first notch and the second notch cooperate to form a first accommodating groove, and the first accommodating groove is used to accommodate the plug end of the second charger.

[0019] In some embodiments, the limiting assembly further includes a second accommodating slot disposed between the first storage position and the second storage position, and the second accommodating slot is used to accommodate plug connectors of the charger of different specifications.

[0020] A second aspect of the present application provides a packaging box, comprising:

[0021] a second box body formed by enclosing at least one plate body;

[0022] a storage structure movably disposed within the second box body;

[0023] Wherein, the storage structure includes:

[0024] A first box body formed by enclosing at least one plate body, wherein the first box body has a receiving space;

[0025] The limiting component is arranged in the accommodating space, and at least two mutually communicating storage positions are formed in the accommodating space, and the storage positions can accommodate chargers of different specifications.

[0026] In some modified embodiments of the second aspect of the present application, the second box body includes a box body portion and a cover portion that are rotatably connected, the box body portion is provided with a receiving groove having a depth, the receiving structure is provided in the receiving groove, and the receiving groove is further capable of receiving an electronic device;

[0027] A lifting structure is further provided in the receiving tank, and the electronic device is provided on the lifting structure;

[0028] Wherein, after the cover portion is rotated to a first angle relative to the box portion, the lifting structure can lift the electronic device to a position protruding from the receiving slot.

[0029] In some embodiments, the lifting structure comprises:

[0030] An elastic body is formed by folding a plate multiple times, and the elastic body is respectively connected to the box body part and the bottom of the receiving groove. The electronic device is arranged on part of the elastic body. The rotation of the cover part can stretch the elastic body so that the elastic body lifts the electronic device.

[0031] In some embodiments, it further includes:

[0032] a partition having a plurality of creases arranged at intervals;

[0033] The docking assembly is arranged on the partition; the partition can be bent through multiple folds to form a prismatic cylinder, the docking assembly is used to maintain the cylinder state, and the cylinder forms a bracket for supporting the electronic device in use. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] The above and other objects, features and advantages of the exemplary embodiments of the present application will become readily understood by reading the detailed description below with reference to the accompanying drawings. In the accompanying drawings, several embodiments of the present application are shown in an exemplary and non-limiting manner, and the same or corresponding reference numerals represent the same or corresponding parts, wherein:

[0035] Figure 1 Schematically shows a structural diagram of the storage structure of the present application from a first perspective;

[0036] Figure 2 Schematically shows a structural diagram of the storage structure of the present application from a second perspective;

[0037] Figure 3Schematically shows a first state diagram of the lifting structure of the packaging box of the present application;

[0038] Figure 4 Schematically shows a second state diagram of the lifting structure of the packaging box of the present application;

[0039] Figure 5 The structure diagram of the partition and docking assembly of the packaging box of the present application is schematically shown;

[0040] Figure 6 The schematic diagram of the structure of the cylinder formed by the partition of the packaging box of the present application is schematically shown.

[0041] Description of Figure Numbers:

[0042] 1. First box body; 11. First plate body; 12. Second plate body; 2. Limiting assembly; 21. Limiting member; 211. First limiting portion; 212. Second limiting portion; 22. Elastic member; 221. First elastic member; 222. Second elastic member; 2221. First elastic portion; 2222. Second elastic portion; 2223. First accommodating groove; 23. Second accommodating groove; 3. Storage position; 31. First storage position; 32. Second storage position; 4. Second box body; 41. Box body part; 42. Cover part; 5. Lifting structure; 51. Elastic body; 52. Lifting member; 6. Partition; 61. Crease; 7. Docking assembly. DETAILED DESCRIPTION

[0043] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.

[0044] It should be noted that, unless otherwise specified, the technical or scientific terms used in this application should have the common meanings understood by those skilled in the art to which this application belongs.

[0045] Example 1

[0046] like Figure 1 As shown, embodiment 1 of the present application provides a storage structure, including:

[0047] A first box body 1 formed by enclosing at least one plate, wherein the first box body 1 has a receiving space;

[0048] The limiting component 2 is arranged in the accommodating space, and at least two mutually communicating storage positions 3 are formed in the accommodating space. The storage positions 3 can accommodate chargers of different specifications.

[0049] Specifically, the first box body 1 can be formed by folding a plate; or, the first box body 1 can be fixed together by bonding, snapping, etc. with multiple plates. When the first box body 1 is formed by folding a plate, folds and slots can be set on the plate in advance so that the plate can be accurately positioned and fixed when folded, simplifying the production and assembly process. The position of the folds and the position of the slots can be specifically designed according to the shape of the first box body 1. The plate can be made of materials such as metal, plastic and paper, among which paper plates are easily degraded in the natural environment and are beneficial to the environment. The paper plate can be made of corrugated cardboard or honeycomb cardboard, so that the formed first box body 1 has a certain strength and stability. The shape of the first box body 1 can be a cuboid, a cube, a cylinder, etc., and its specific shape can be selected according to storage requirements and usage scenarios.

[0050] The storage structure may further include a closure member that is rotatably connected to the first housing 1; alternatively, the closure member may be detachably connected to the first housing 1, enabling the storage space to be closed or opened. When the storage space is closed, the closure member protects the charger inside the storage space from damage or loss. When the storage space is open, the user can conveniently remove the charger for use or inspection. When the closure member is detachably connected to the first housing 1, the closure member may be cylindrical, with the inner wall of the closure member conforming to the outer wall of the first housing 1. The closure member fits over the first housing 1 to seal the storage space and secure the charger within the storage space. In this case, the outer wall of the first housing 1 may be provided with a pull ring; alternatively, the first housing 1 may be provided with a through-hole to facilitate the user's removal of the first housing 1 from the closure member. Alternatively, a snap and corresponding groove may be provided on the first housing 1 and the closure member to achieve a detachable connection between the two.

[0051] The limiting assembly 2 can be fixedly attached to the inner wall of the first housing 1 by gluing, embedding, snapping, or other methods. In this case, the limiting assembly 2 may include at least one baffle. Alternatively, the first housing 1 and limiting assembly 2 may be formed by folding a single plate. The limiting assembly 2 can be made of an elastic material (such as rubber or sponge), and the elastic properties of the limiting assembly 2 enable each storage position 3 to accommodate chargers of different specifications.

[0052] The number of storage slots 3 can be two, three, four, or even more. The spatial structure of each storage slot 3 can be the same; or the spatial structure of each storage slot 3 can be different, and each storage slot 3 can accommodate at least one type of charger. When the number of storage slots 3 is greater than or equal to three, the spatial structure of all or some of the storage slots 3 can be different.

[0053] The storage slots 3 are interconnected, allowing adjacent storage slots 3 to be combined and matched to accommodate chargers of different sizes, increasing the flexibility and versatility of the storage slots 3. For example, a long charger can be placed along the connecting direction of two storage slots 3; or, a charger with a protruding plug can have the protruding portion placed in one storage slot 3 and the main body in another, adjusting the positions to achieve optimal storage. The interconnected design of the storage slots 3 also allows users to reach into or place a charger in a neighboring connected storage slot 3, greatly improving user convenience.

[0054] The storage structure provided in Example 1 of the present application forms at least two interconnected storage positions 3 by setting a limit component 2 in the accommodating space of the first box body 1 to accommodate the storage of chargers of different specifications, thereby realizing that one storage structure meets the storage needs of chargers of multiple different specifications, greatly improving the versatility of the storage structure, and reducing the production and inventory costs of the storage structure; moreover, the interconnected storage positions 3 make it more convenient for users to place and remove chargers, and are more conducive to user operation.

[0055] like Figure 1 As shown, in some embodiments, the limiting assembly 2 divides the accommodating space into a first storage position 31 and a second storage position 32 , and at least part of the spatial structure of the first storage position 31 and the second storage position 32 is different.

[0056] Specifically, the shape of the limiting component 2 can be designed (for example, a baffle in a straight, L-shaped, or U-shaped shape can be selected as the limiting component 2) to form two storage positions 3 with different spatial structures; and / or, the specific position and angle of the limiting component 2 in the accommodating space can be designed to form two storage positions 3 with different spatial structures. By forming storage positions 3 with different spatial structures, the spatial structure of each storage position 3 can be designed according to the specifications and shape of the charger, so that each storage position 3 can stably accommodate chargers of at least one specification, thereby realizing the classified storage of chargers. For example, chargers of different brands and models can be stored separately for easy management and use.

[0057] like Figure 1 and Figure 2 As shown, in some embodiments, the limiting component 2 includes:

[0058] A limiting member 21 is provided in the first box body 1, and the limiting member 21 can limit the movement of the charger in the storage position 3 in the first direction;

[0059] An elastic member 22 is disposed in the first box body 1; the elastic member 22 can abut against the charger in the storage position 3 along the second direction to limit the movement of the charger in the second direction. The limiting member 21 and the elastic member 22 cooperate to form the storage position 3, and the first direction is perpendicular to the second direction.

[0060] Specifically, there can be multiple limiting members 21, which can be spaced apart along the first direction, with a receiving position 3 formed between two adjacent limiting members 21. Adjacent limiting members 21 are used to limit the movement of the charger in the first direction. The limiting members 21 can be plate-shaped, block-shaped, or the like. The limiting members 21 can have a limiting surface, and the charger can be aligned with a portion of the limiting surface of the limiting member 21 to enhance the limiting effect of the limiting member 21.

[0061] The elastic member 22 can be made of rubber or sponge material. The elastic member 22 can be in the shape of a long strip, a sheet or a block. The elastic member 22 can be connected to the inner wall of the first box body 1 by embedding or bonding. Alternatively, the elastic member 22 can be a hollow structure formed by folding a paper board, and the hollow structure can be integrally formed with the first box body 1.

[0062] The cooperation between the limiting member 21 and the elastic member 22 can limit the charger from the first direction and the second direction, preventing the charger from shaking or displacing in the storage position 3, thereby greatly improving the storage stability; moreover, the elastic member 22 can adapt to the different sizes of the charger in the second direction, so that the storage position 3 can be used for chargers with more sizes along the second direction, thereby improving its applicability; the elastic member 22 can also provide a buffering effect for the charger, reducing the impact on the charger and effectively protecting the charger casing.

[0063] like Figure 1 and Figure 2 As shown, in some embodiments, the limiting member 21 includes a first limiting portion 211 arranged opposite to the first plate 11 of the first box body 1, and the first limiting portion 211 can form a first storage position 31 with the first plate 11 and the first elastic member 221. When the first charger with a first specification is in the first storage position 31, several surfaces of the first charger respectively abut against the first plate 11, the first limiting portion 211 and the first elastic member 221 to limit the movement of the first charger in the first direction and the second direction; and / or,

[0064] The limiting member 21 also includes a second limiting portion 212 arranged opposite to the second plate body 12 of the first box body 1. The second limiting portion 212 can form a second storage position 32 with the second plate body 12 and the second elastic member 222. When the second charger with the second specification is in the second storage position 32, several surfaces of the second charger are respectively in contact with the second plate body 12, the second limiting portion 212 and the second elastic member 222 to limit the movement of the second charger in the first direction and the second direction.

[0065] Specifically, the first plate 11 and the second plate 12 can be spaced apart and facing each other along the first direction. The dimensions of the first plate 11 and the second plate 12 along the third direction can be the same, and the first direction, the second direction and the third direction are perpendicular to each other. The first plate 11 and the first limiting portion 211 are spaced apart along the first direction, and the first elastic member 221 can be located between the first plate 11 and the first limiting portion 211, and at least part of the first limiting portion 211 is smaller than the first plate 11 in the third direction, so as to form a first storage position 31 and a second storage position 32 that are connected to each other. The second plate 12 and the second limiting portion 212 are spaced apart along the first direction, and the second elastic member 222 can be located between the second plate 12 and the first limiting portion 211, and at least part of the second limiting portion 212 is smaller than the second plate 12 in the third direction, so as to form a first storage position 31 and a second storage position 32 that are connected to each other. The first limiting portion 211 and the second limiting portion 212 can be spaced apart along the first direction, or they can be bonded or integrally formed to optimize space utilization. The first elastic member 221 and the second elastic member 222 can be spaced apart along the first direction, or they can be snap-fitted or integrally formed.

[0066] The first type of chargers may include chargers for countries such as Europe, Belgium, South Korea, the United States, China, and India. The second type of chargers may include chargers for countries such as the United Kingdom, Argentina, and Australia.

[0067] like Figure 2 As shown, in some embodiments, the second elastic member 222 includes a first elastic portion 2221 and a second elastic portion 2222 that are relatively arranged, and the first elastic portion 2221 and the second elastic portion 2222 are respectively provided with a first notch and a second notch that are relatively arranged, and the first notch and the second notch cooperate to form a first accommodating groove 2223, and the first accommodating groove 2223 is used to accommodate the plug-in end of the second charger.

[0068] Specifically, the first elastic portion 2221 and the second elastic portion 2222 are spaced apart along the second direction, and the first side of the first elastic portion 2221 and the first side of the second elastic portion 2222 are opposite to each other along the second direction. The first side of the first elastic portion 2221 is recessed inward to form a first notch, and the first side of the second elastic portion 2222 is recessed inward to form a second notch. The first notch and the second notch are opposite to each other along the second direction to form a first receiving slot 2223. The first receiving slot 2223 enhances the retaining effect on the second charger. Moreover, because the first receiving slot 2223 is formed by the elastic portion, the first receiving slot 2223 can accommodate plug-in terminals of different sizes for the second charger. For plug-in terminals of different sizes, the size of the first receiving slot 2223 can be adjusted through the elastic deformation of the elastic portion itself, ensuring that the plug-in terminal can be smoothly inserted and stably fixed, thereby improving the versatility of the first receiving slot 2223.

[0069] like Figure 1 As shown, in some embodiments, the limiting assembly 2 further includes a second receiving slot 23 disposed between the first receiving position 31 and the second receiving position 32 , and the second receiving slot 23 is used to accommodate plug connectors of the charger of different specifications.

[0070] Specifically, the size of the second receiving slot 23 can be larger than the maximum size of the charger's plug connector; alternatively, the size of the second receiving slot 23 can be equal to the maximum size of the charger's plug connector, thereby limiting the maximum size of the charger's plug connector. The second receiving slot 23 can have a bearing surface, which can be formed of an elastic material provided on the surface of the second receiving slot 23 so that the bearing surface can bear charger plug connectors of different sizes, ensuring the stability of the charger when stored. Separating the plug connector from the main body of the charger for separate storage can more rationally utilize the storage space. For some irregularly shaped charger plug connectors, by placing them in the second receiving slot 23, they can be better combined with the storage position 3 for storage, thereby improving space utilization.

[0071] Example 2

[0072] like Figure 1 and Figure 4 As shown, embodiment 2 of the present application provides a packaging box, comprising:

[0073] A second box body 4 formed by enclosing at least one plate;

[0074] a storage structure movably disposed in the second box body 4;

[0075] Wherein, the storage structure includes:

[0076] A first box body 1 formed by enclosing at least one plate, wherein the first box body 1 has a receiving space;

[0077] The limiting component 2 is arranged in the accommodating space, and at least two mutually communicating storage positions 3 are formed in the accommodating space. The storage positions 3 can accommodate chargers of different specifications.

[0078] Specifically, the storage structure can be placed within the second box body 4. The packaging box may also include an accessory box, which can be used to store data cables, headphones, or instruction manuals. The number of accessory boxes can be designed based on the number and type of accessories. In addition, other boxes can be placed within the packaging box as needed. After the box body and storage structure are completely emptied, the packaging box can still be used as a storage box.

[0079] The packaging box of Example 2 of the present application includes the storage structure provided in Example 1. The storage structure forms at least two interconnected storage positions 3 by setting a limit component 2 in the accommodating space of the first box body 1 to accommodate the storage of chargers of different specifications, thereby realizing that one storage structure meets the storage needs of chargers of multiple different specifications, greatly improving the versatility of the storage structure, and reducing the production and inventory costs of the storage structure; and the interconnected storage positions 3 make it more convenient for users to place and remove chargers, and are more conducive to operation.

[0080] like Figure 3 and Figure 4 As shown, in some embodiments, the second box body 4 includes a box body portion 41 and a cover portion 42 that are rotatably connected. The box body portion 41 is provided with a receiving groove having a depth. The receiving structure is provided in the receiving groove. The receiving groove can also receive electronic equipment.

[0081] A lifting structure 5 is further provided in the receiving tank, and the electronic device is provided on the lifting structure 5;

[0082] After the cover portion 42 rotates to a first angle relative to the box portion 41 , the lifting structure 5 can lift the electronic device to a position protruding from the receiving slot.

[0083] Specifically, a cushion pad may be provided in the packaging box, and the electronic device may be placed in the receiving groove via the cushion pad to provide cushioning for the electronic device in the second box body 4 and improve the safety of the electronic device.

[0084] The exterior of the packaging box can be designed as needed, such as with printed trademarks, patterns, or characters. When using a physical storefront, the second box body 4 can be placed directly on a shelf for sale. When using a telemarketing model, a logistics box can be placed on the exterior of the packaging box to prevent wear and tear on the packaging box surface. The packaging box, accessory box, and cushioning pad can all be made of paper to meet environmental requirements. The electronic device can be a laptop, tablet, or mobile phone.

[0085] Lifting structure 5 may include at least one spring, which may be disposed within the receiving slot. Cover portion 42 is pivotally connected to the first side of box portion 41, and the at least one spring may be positioned adjacent to the first side of box portion 41. When cover portion 42 is rotated to a first angle relative to box portion 41, the spring compressed by cover portion 42 releases energy, lifting the electronic device. Lifting structure 5 can elevate the electronic device to an easily accessible position, enhancing convenience and improving the user experience.

[0086] like Figure 3 and Figure 4 As shown, in some embodiments, the lifting structure 5 includes:

[0087] An elastic body 51 is formed by folding a plate multiple times, and the elastic body 51 is respectively connected to the box body part 41 and the bottom of the receiving groove. The electronic device is arranged on part of the elastic body 51. The rotation of the cover part 42 can stretch the elastic body 51 so that the elastic body 51 lifts the electronic device.

[0088] Specifically, the elastic body 51 can be connected to the box body portion 41 and the bottom of the receiving slot respectively by bonding or snapping. When the cover portion 42 rotates relative to the box body portion 41, the elastic body 51 will be stretched, causing the folded elastic body 51 to open, increasing the distance between the elastic body 51 and the bottom of the receiving slot, thereby lifting the electronic device and making the electronic device protrude from the position of the receiving slot. The elastic body 51 can be made of folded cardboard, which helps protect the environment. At the same time, the foldable structure can be quickly designed and adjusted according to the size and storage requirements of different electronic devices, which is more flexible.

[0089] The lifting structure 5 may further include a lifting member 52, which may be formed by folding a plate and made of paper. The lifting member 52 has a horizontal supporting surface and is placed on a portion of the elastic body 51. The electronic device is placed on the supporting surface of the lifting member 52 to achieve stable lifting and support.

[0090] like Figure 5 and Figure 6 As shown, in some embodiments, it also includes:

[0091] The partition 6 has a plurality of folds 61 arranged at intervals;

[0092] The docking assembly 7 is arranged on the partition 6; the partition 6 can be bent through multiple folds 61 to form a prismatic cylinder, and the docking assembly 7 is used to maintain the cylinder state, and the cylinder forms a bracket for supporting the electronic device in use.

[0093] Specifically, the partition 6 can be placed under the electronic device to distinguish other boxes such as accessory boxes from the electronic device, thereby achieving stable lifting and support for the electronic device. The material selection of the partition 6 can refer to the material selection of the first box body 1. The length of the partition 6 can be the same as the length of the electronic device. The fold 61 on the partition 6 is used to guide the partition 6 to form a predetermined cylindrical shape when bending, for example, it can be a triangular prism, a quadrangular prism, etc., among which the isosceles triangular prism can provide more stable support for the electronic device.

[0094] The docking assembly 7 may include two magnetic members, which may be embedded in the first and second surfaces of the partition 6, respectively. The partition 6 may be folded to allow portions of the first and second surfaces to overlap, causing the two magnetic members to be magnetically attracted to each other, maintaining a cylindrical state. Alternatively, the docking assembly 7 may include a slot and a protrusion that may be provided on the first and second surfaces of the partition 6. The slot and the protrusion have matching shapes. The partition 6 may be folded to allow portions of the first and second surfaces to overlap, causing the two slots and the protrusion to engage, maintaining a cylindrical state, and being used as a bracket for an electronic device to enhance the functionality of the product.

[0095] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of this application. Therefore, the scope of protection of this application should be based on the scope of protection of the claims.

Claims

1. A storage structure, characterized in that: include: A first box body formed by enclosing at least one plate body, wherein the first box body has a receiving space; The limiting component is arranged in the accommodating space, and at least two mutually communicating storage positions are formed in the accommodating space, and the storage positions can accommodate chargers of different specifications.

2. The storage structure according to claim 1, wherein: The limiting assembly divides the accommodating space into a first storage position and a second storage position, and at least a portion of the spatial structure of the first storage position is different from that of the second storage position.

3. The storage structure according to claim 1 or 2, characterized in that: The limiting component includes: a limiting member disposed in the first housing, the limiting member being capable of limiting movement of the charger in the storage position in a first direction; An elastic member is disposed in the first box body; the elastic member can abut against the charger in the storage position along a second direction to limit the movement of the charger in the second direction, the limiting member and the elastic member cooperate to form the storage position, and the first direction is perpendicular to the second direction.

4. The storage structure according to claim 3, characterized in that: The limiting member includes a first limiting portion disposed opposite to the first plate of the first box body, the first limiting portion being capable of forming a first storage position together with the first plate and the first elastic member. When the first charger of the first specification is in the first storage position, several surfaces of the first charger respectively abut against the first plate, the first limiting portion, and the first elastic member to limit movement of the first charger in the first direction and the second direction. and / or, The limiting member also includes a second limiting portion arranged opposite to the second plate body of the first box body, and the second limiting portion can form a second storage position with the second plate body and the second elastic member. When the second charger with a second specification is in the second storage position, several surfaces of the second charger respectively abut against the second plate body, the second limiting portion and the second elastic member to limit the movement of the second charger in the first direction and the second direction.

5. The storage structure according to claim 4, characterized in that: The second elastic member includes a first elastic portion and a second elastic portion arranged opposite to each other, and the first elastic portion and the second elastic portion are respectively provided with a first notch and a second notch arranged opposite to each other, and the first notch and the second notch cooperate to form a first accommodating groove, and the first accommodating groove is used to accommodate the plug-in end of the second charger.

6. The storage structure according to claim 4, characterized in that: The limiting assembly further includes a second accommodating slot disposed between the first storage position and the second storage position, and the second accommodating slot is used to accommodate plug connectors of the charger of different specifications.

7. A packaging box, characterized in that: include: a second box body formed by enclosing at least one plate body; a storage structure movably disposed within the second box body; Wherein, the storage structure includes: A first box body formed by enclosing at least one plate body, wherein the first box body has a receiving space; The limiting component is arranged in the accommodating space, and at least two mutually communicating storage positions are formed in the accommodating space, and the storage positions can accommodate chargers of different specifications.

8. The packaging box according to claim 7, characterized in that: The second box body includes a box body portion and a cover portion that are rotatably connected, the box body portion is provided with a receiving groove having a depth, the receiving structure is provided in the receiving groove, and the receiving groove can also receive electronic equipment; A lifting structure is further provided in the receiving tank, and the electronic device is provided on the lifting structure; Wherein, after the cover portion is rotated to a first angle relative to the box portion, the lifting structure can lift the electronic device to a position protruding from the receiving slot.

9. The packaging box according to claim 8, characterized in that: The lifting structure comprises: An elastic body is formed by folding a plate multiple times, and the elastic body is respectively connected to the box body part and the bottom of the receiving groove. The electronic device is arranged on part of the elastic body. The rotation of the cover part can stretch the elastic body so that the elastic body lifts the electronic device.

10. The packaging box according to claim 8, characterized in that: Also includes: a partition having a plurality of creases arranged at intervals; a docking assembly, disposed on the partition; The partition can be bent through a plurality of folds to form a prismatic cylinder, the docking assembly is used to maintain the cylinder state, and the cylinder forms a bracket for supporting the electronic device in use.